Confocal μ-XANES as a tool to analyze Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano

Here we present a confocal Fe K-edge μ-XANES method (where XANES stands for X-ray absorption near-edge spectroscopy) for the analysis of Fe oxidation state in heterogeneous and one-side-polished samples. The new technique allows for an analysis of small volumes with high spatial 3D resolution of <...

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Main Authors: Botcharnikov, Roman, Wilke, Max, Garrevoet, Jan, Portnyagin, Maxim, Klimm, Kevin, Buhre, Stephan, Krasheninnikov, Stepan, Almeev, Renat, Moune, Severine, Falkenberg, Gerald
Format: Article in Journal/Newspaper
Language:English
Published: Johannes Gutenberg-Universität Mainz 2024
Subjects:
Online Access:https://openscience.ub.uni-mainz.de/handle/20.500.12030/11323
https://hdl.handle.net/20.500.12030/11323
https://doi.org/10.25358/openscience-11302
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author Botcharnikov, Roman
Wilke, Max
Garrevoet, Jan
Portnyagin, Maxim
Klimm, Kevin
Buhre, Stephan
Krasheninnikov, Stepan
Almeev, Renat
Moune, Severine
Falkenberg, Gerald
author_facet Botcharnikov, Roman
Wilke, Max
Garrevoet, Jan
Portnyagin, Maxim
Klimm, Kevin
Buhre, Stephan
Krasheninnikov, Stepan
Almeev, Renat
Moune, Severine
Falkenberg, Gerald
author_sort Botcharnikov, Roman
collection Gutenberg Open Science (Open-Science-Repository of the Johannes Gutenberg-University Mainz)
description Here we present a confocal Fe K-edge μ-XANES method (where XANES stands for X-ray absorption near-edge spectroscopy) for the analysis of Fe oxidation state in heterogeneous and one-side-polished samples. The new technique allows for an analysis of small volumes with high spatial 3D resolution of <100 µm3. The probed volume is restricted to that just beneath the surface of the exposed object. This protocol avoids contamination of the signal by the host material and minimizes self-absorption effects. This technique has been tested on a set of experimental glasses with a wide range of Fe3+ ΣFe ratios. The method was applied to the analysis of natural melt inclusions trapped in forsteritic to fayalitic olivine crystals of the Hekla volcano, Iceland. Our measurements reveal changes in Fe3+ ΣFe from 0.17 in basaltic up to 0.45 in dacitic melts, whereas the magnetite–ilmenite equilibrium shows redox conditions with Fe3+ ΣFe ≤0.20 (close to FMQ, fayalite–magnetite–quartz redox equilibrium) along the entire range o
format Article in Journal/Newspaper
genre Hekla
Iceland
genre_facet Hekla
Iceland
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institution Open Polar
language English
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op_doi https://doi.org/20.500.12030/1132310.25358/openscience-11302
op_rights CC BY
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openAccess
op_source European journal of mineralogy. 36. 1. 2024. 195. 208. -
publishDate 2024
publisher Johannes Gutenberg-Universität Mainz
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spelling ftunivmainzpubl:oai:openscience.ub.uni-mainz.de:20.500.12030/11323 2025-04-27T14:30:27+00:00 Confocal μ-XANES as a tool to analyze Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano Botcharnikov, Roman Wilke, Max Garrevoet, Jan Portnyagin, Maxim Klimm, Kevin Buhre, Stephan Krasheninnikov, Stepan Almeev, Renat Moune, Severine Falkenberg, Gerald 2024 https://openscience.ub.uni-mainz.de/handle/20.500.12030/11323 https://hdl.handle.net/20.500.12030/11323 https://doi.org/10.25358/openscience-11302 eng eng Johannes Gutenberg-Universität Mainz CC BY https://creativecommons.org/licenses/by/4.0/ openAccess European journal of mineralogy. 36. 1. 2024. 195. 208. - ddc:550 Zeitschriftenaufsatz publishedVersion Text doc-type:Article 2024 ftunivmainzpubl https://doi.org/20.500.12030/1132310.25358/openscience-11302 2025-04-01T03:15:30Z Here we present a confocal Fe K-edge μ-XANES method (where XANES stands for X-ray absorption near-edge spectroscopy) for the analysis of Fe oxidation state in heterogeneous and one-side-polished samples. The new technique allows for an analysis of small volumes with high spatial 3D resolution of <100 µm3. The probed volume is restricted to that just beneath the surface of the exposed object. This protocol avoids contamination of the signal by the host material and minimizes self-absorption effects. This technique has been tested on a set of experimental glasses with a wide range of Fe3+ ΣFe ratios. The method was applied to the analysis of natural melt inclusions trapped in forsteritic to fayalitic olivine crystals of the Hekla volcano, Iceland. Our measurements reveal changes in Fe3+ ΣFe from 0.17 in basaltic up to 0.45 in dacitic melts, whereas the magnetite–ilmenite equilibrium shows redox conditions with Fe3+ ΣFe ≤0.20 (close to FMQ, fayalite–magnetite–quartz redox equilibrium) along the entire range o Article in Journal/Newspaper Hekla Iceland Gutenberg Open Science (Open-Science-Repository of the Johannes Gutenberg-University Mainz)
spellingShingle ddc:550
Botcharnikov, Roman
Wilke, Max
Garrevoet, Jan
Portnyagin, Maxim
Klimm, Kevin
Buhre, Stephan
Krasheninnikov, Stepan
Almeev, Renat
Moune, Severine
Falkenberg, Gerald
Confocal μ-XANES as a tool to analyze Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano
title Confocal μ-XANES as a tool to analyze Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano
title_full Confocal μ-XANES as a tool to analyze Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano
title_fullStr Confocal μ-XANES as a tool to analyze Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano
title_full_unstemmed Confocal μ-XANES as a tool to analyze Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano
title_short Confocal μ-XANES as a tool to analyze Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano
title_sort confocal μ-xanes as a tool to analyze fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the hekla volcano
topic ddc:550
topic_facet ddc:550
url https://openscience.ub.uni-mainz.de/handle/20.500.12030/11323
https://hdl.handle.net/20.500.12030/11323
https://doi.org/10.25358/openscience-11302